Issue
Korean Journal of Chemical Engineering,
Vol.31, No.6, 1076-1081, 2014
Effect of sodium dodecylbenzene sulfonate on the dispersion stability of ceramic glaze suspension
Sodium dodecylbenzene sulfonate (SDBS) was used to render the stability of ceramic glaze dispersion which is composed of limestone, feldspar, quartz, kaolin and ferric oxide. The measured zeta potential showed negative values for the systems in deionized water and 0.001 M MgCl2 media at pH above 2, but a positive value was observed in 0.1M MgCl2 at pH higher than 6.7. Adsorption of SDBS in aqueous suspensions of ceramic glaze in deionized water and in 0.001 M MgCl2, within the concentration range studied, followed both the Langmuir and Freundlich isotherms, but the Freundlich isotherm was more favored. Adsorption of SDBS in 0.1M MgCl2 corresponded to the Freundlich isotherm. From dispersion stability investigation, SDBS could render the suspension in deionized water and in 0.001 mM MgCl2 more than in 0.1 mM MgCl2.
[References]
  1. Greenwood R, Kendall K, Powder Technol., 113(1-2), 148, 2000
  2. Greenwood R, Adv. Colloid Interface Sci., 106(1-3), 55, 2003
  3. Panya P, Arquero OA, Franks GV, Wanless EJ, J. Colloid Interface Sci., 279(1), 23, 2004
  4. Schwarz S, Lunkwitz K, Keszler B, Spiegler U, Killmann E, Jaeger W, Colloids Surf., A., 163(1), 17, 2000
  5. Thongphrom S, Ph.D. Thesis, Chiang Mai University, Chiang Mai, 2003
  6. Johnson SB, Franks GV, Scales PJ, Boger DV, Healy TW, Int. J. Miner. Process., 58(1), 267, 2000
  7. Marco P, Llorens J, Colloids Surf., A., 270, 291, 2005
  8. Romagnoli M, Andreola F, J. Eur. Ceram. Soc., 27(2-3), 1871, 2007
  9. Atkin R, Craig VSJ, Biggs S, Langmuir, 17(20), 6155, 2001
  10. Bremmell KE, Jameson GJ, Biggs S, Colloids Surf., A., 146(1-3), 75 (1999), 155(1), 1, 1999
  11. Goloub TP, Koopal LK, Bijsterbosch BH, Sidorova MP, Langmuir, 12(13), 3188, 1996
  12. Goloub TP, Koopal LK, Langmuir, 13(4), 673, 1997
  13. Koopal LK, Goloub TP, de Keizer A, Sidorova MP, Colloids Surf., A., 151(1-2), 15, 1999
  14. Monticone V, Treiner C, J. Colloid Interface Sci., 166(2), 394, 1994
  15. Monticone V, Treiner C, Colloids Surf., A., 104, 285, 1995
  16. Tadros TF, J. Colloid Interface Sci., 46, 528, 1974
  17. Churaev NV, Sergeeva IP, Sobolev VD, Jacobasch HJ, Weidenhammer P, Schmitt FJ, Colloids Surf., A., 164(2-3), 121, 2000
  18. Patzko A, Szanto F, Colloids Surf., 25(2-4), 173, 1987
  19. Koster R, Schreck B, von Rybinski W, Dobias B, Miner. Eng., 5(3-5), 445, 1992
  20. Hanna HS, Somasundaran P, J. Colloid Interface Sci., 70(1), 181, 1979
  21. Li F, Rosen MJ, J. Colloid Interface Sci., 224(2), 265, 2000
  22. McCarron AM, Crispo S, Smith-Palmer T, J. Appl. Polym. Sci., 83(11), 2382, 2002
  23. Sastry NV, Sequaris JM, Schwuger MJ, J. Colloid Interface Sci., 171(1), 224, 1995
  24. Scamehorn JF, Schechter RS, Wade WH, J. Colloid Interface Sci., 85, 463, 1982
  25. Sjoberg M, Bergstrom L, Larsson A, Sjostrom E, Colloids Surf., A., 159, 197, 1999
  26. Torn LH, de Keizer A, Koopal LK, Lyklema J, J. Colloid Interface Sci., 260(1), 1, 2003
  27. Wang JB, Han BX, Dai M, Yan HK, Li ZX, Thomas RK, J. Colloid Interface Sci., 213(2), 596, 1999
  28. Backfolk K, Lagerge S, Rosenholm JB, J. Colloid Interface Sci., 254(1), 8, 2002
  29. Rosen MJ, Li F, J. Colloid Interface Sci., 234(2), 418, 2001
  30. Song MG, Kim JY, Kim JD, J. Colloid Interface Sci., 226(1), 83, 2000
  31. Taffarel SR, Rubio J, Miner Eng., 23, 771, 2010
  32. Somasundaran P, Krishnakumar S, Colloids Surf., A., 93, 79, 1994
  33. Jian-Xiao LV, Dong W, Ji-Ti Z, J. Disper. Sci. Technol., 27, 1073, 2006
  34. Vanda News, “Building and sanitary ceramics glaze additives,” Foshan Vanda Co., Ltd. (2011), http://www.vandaglaze.com/news_view.asp?lang=en&id=203&class1=%D0%D0%D2%B5%B6%AF%CC%AC].
  35. Zamek J, What Every Potter Should Know, Krause Iola, WI, 1999
  36. McCoy W, US Patent, 2,017,318, 1935